xserver-multidpi/hw/kdrive/savage/s3clock.c
Keith Packard 3731c184d6 Lots of Tiny-X changes:
Add overlay support in the Tiny-X Savage4 driver (required changing lots of
    Tiny-X code). Savage4 now support 8/16, 8/32 overlays.
Add IGS Cyberpro 5050 driver. This chip has bus support for embeded
    systems.
2000-05-06 22:17:53 +00:00

85 lines
2.4 KiB
C

/*
* Id: s3clock.c,v 1.2 1999/11/02 06:16:29 keithp Exp $
*
* Copyright 1999 SuSE, Inc.
*
* Permission to use, copy, modify, distribute, and sell this software and its
* documentation for any purpose is hereby granted without fee, provided that
* the above copyright notice appear in all copies and that both that
* copyright notice and this permission notice appear in supporting
* documentation, and that the name of SuSE not be used in advertising or
* publicity pertaining to distribution of the software without specific,
* written prior permission. SuSE makes no representations about the
* suitability of this software for any purpose. It is provided "as is"
* without express or implied warranty.
*
* SuSE DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE, INCLUDING ALL
* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS, IN NO EVENT SHALL SuSE
* BE LIABLE FOR ANY SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION
* OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN
* CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
*
* Author: Keith Packard, SuSE, Inc.
*/
/* $XFree86: xc/programs/Xserver/hw/kdrive/savage/s3clock.c,v 1.3 2000/02/23 20:30:02 dawes Exp $ */
#include "s3.h"
/*
* Clock synthesis:
*
* f_out = f_ref * ((M + 2) / ((N + 2) * (1 << R)))
*
* Constraints:
*
* 1. 135MHz <= f_ref * ((M + 2) / (N + 2)) <= 270 MHz
* 2. N >= 1
*
* Vertical refresh rate = clock / ((hsize + hblank) * (vsize + vblank))
* Horizontal refresh rate = clock / (hsize + hblank)
*/
/* all in kHz */
void
s3GetClock (int target, int *Mp, int *Np, int *Rp, int maxM, int maxN, int maxR, int minVco)
{
int M, N, R, bestM, bestN;
int f_vco, f_out;
int err, abserr, besterr;
/*
* Compute correct R value to keep VCO in range
*/
for (R = 0; R <= maxR; R++)
{
f_vco = target * (1 << R);
if (f_vco >= minVco)
break;
}
/* M = f_out / f_ref * ((N + 2) * (1 << R)); */
besterr = target;
for (N = 1; N <= maxN; N++)
{
M = ((target * (N + 2) * (1 << R) + (S3_CLOCK_REF/2)) + S3_CLOCK_REF/2) / S3_CLOCK_REF - 2;
if (0 <= M && M <= maxM)
{
f_out = S3_CLOCK(M,N,R);
err = target - f_out;
if (err < 0)
err = -err;
if (err < besterr)
{
besterr = err;
bestM = M;
bestN = N;
}
}
}
*Mp = bestM;
*Np = bestN;
*Rp = R;
}